On Secondary Development of PTV-VISSIM for Traffic Optimization

L. Yang, Weiyao Lan
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引用次数: 4

Abstract

Traffic microscopic simulation has been widely used in traffic network performance analysis. Microscopic simulation is safer, cheaper and faster than implementing and testing in real traffic environment. One of the difficulties in traffic simulation is how to verify the effectiveness of the traffic optimization model. The effect of the control and optimization algorithm can be achieved by using VISSIM microscopic simulation software. The internal functions of the microscopic simulation software are relatively simple. The basic traffic simulation parameters can be set in advance to simulate the conditions of the traffic network, cause the parameters cannot be effectively controlled constantly. Thus secondary development of VISSIM is necessary. This article study the secondary development of VISSIM software with Visual Studio(C#), and the Component Object Model(COM). This method is intended to provide useful implementation for the secondary development of VISSIM micro-simulation based on the C# compilation environment. A traffic simulation platform integrated with VISSIM and Visual Studio(C#) for traffic optimization simulation was proposed. The development of a traffic simulation platform displaying road network parameters constantly. It makes significance help to the further research and testing of intelligent traffic. And the platform can greatly reduce programming complexity and save programming time, making it easy to master. This article also presents examples of signal timing optimization based on single-intersection simulations.
面向流量优化的PTV-VISSIM二次开发研究
交通微观仿真已广泛应用于交通网络性能分析。微观模拟比在真实交通环境中实施和测试更安全、成本更低、速度更快。如何验证交通优化模型的有效性是交通仿真的难点之一。利用VISSIM微观仿真软件可以实现控制和优化算法的效果。微观模拟软件的内部功能相对简单。基础交通仿真参数可以预先设置,以模拟交通网络的状况,但由于参数无法持续有效控制。因此,VISSIM的二次开发是必要的。本文研究了用Visual Studio(c#)和组件对象模型(COM)对VISSIM软件进行二次开发。该方法旨在为基于c#编译环境的VISSIM微仿真二次开发提供有用的实现。提出了一个集成VISSIM和Visual Studio(c#)的交通优化仿真平台。开发了一个实时显示路网参数的交通仿真平台。这对智能交通的进一步研究和测试具有重要意义。并且该平台大大降低了编程复杂度,节省了编程时间,易于掌握。本文还介绍了基于单交叉口仿真的信号配时优化示例。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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